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Updated: Feb 3, 2026

Studying Triple Negative Breast Cancer Using Orthotopic Breast Cancer Model
Published on: March 20, 2020
NFIB promotes cell survival by directly suppressing p21 transcription in TP53-mutated triple-negative breast cancer
Rong-Zong Liu1, The M Vo1, Saket Jain1
1Department of Oncology, University of Alberta, Cross Cancer Institute, Edmonton, Canada.
Abstract:
Triple-negative breast cancer (TNBC) is an aggressive breast cancer subtype with limited treatment options and poor prognosis. There is an urgent need to identify and understand the key factors and signalling pathways driving TNBC tumour progression, relapse, and treatment resistance. In this study, we report that gene copy numbers and expression levels of nuclear factor IB (NFIB), a recently identified oncogene in small cell lung cancer, are preferentially increased in TNBC compared to other breast cancer subtypes. Furthermore, increased levels of NFIB are significantly associated with high tumour grade, poor prognosis, and reduced chemotherapy response. Concurrent TP53 mutations and NFIB overexpression (z-scores > 0) were observed in 77.9% of TNBCs, in contrast to 28.5% in non-TNBCs. Depletion of NFIB in TP53-mutated TNBC cell lines promotes cell death, cell cycle arrest, and enhances sensitivity to docetaxel, a first-line chemotherapeutic drug in breast cancer treatment. Importantly, these alterations in growth properties were accompanied by induction of CDKN1A, the gene encoding p21, a downstream effector of p53. We show that NFIB directly interacts with the CDKN1A promoter in TNBC cells. Furthermore, knockdown of combined p21 and NFIB reverses the docetaxel-induced cell growth inhibition observed upon NFIB knockdown, indicating that NFIB's effect on chemotherapeutic drug response is mediated through p21. Our results indicate that NFIB is an important TNBC factor that drives tumour cell growth and drug resistance, leading to poor clinical outcomes. Thus, targeting NFIB in TP53-mutated TNBC may reverse oncogenic properties associated with mutant p53 by restoring p21 activity. Copyright © 2018 Pathological Society of Great Britain and Ireland. Published by John Wiley & Sons, Ltd.
Insights
Nuclear factor IB (NFIB) is overexpressed in triple-negative breast cancer (TNBC), driving tumor growth and chemoresistance. Targeting NFIB may restore p21 activity and improve treatment outcomes in TNBC.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Triple-negative breast cancer (TNBC) is aggressive, with limited therapeutic options and poor prognosis.
- Identifying drivers of TNBC progression, relapse, and treatment resistance is critical.
- Nuclear factor IB (NFIB), an oncogene in lung cancer, is investigated for its role in TNBC.
Purpose of the Study:
- To investigate the role of NFIB in TNBC.
- To determine the association of NFIB with TNBC characteristics and patient outcomes.
- To explore NFIB's mechanism in chemoresistance and its interaction with p53/p21 pathways.
Main Methods:
- Analysis of gene copy numbers and expression levels of NFIB in TNBC and other breast cancer subtypes.
- Correlation analysis of NFIB levels with tumor grade, prognosis, and chemotherapy response.
- Functional studies involving NFIB depletion in TNBC cell lines (TP53-mutated).
- Investigation of NFIB's interaction with the CDKN1A promoter and its effect on p21 expression.
- Assessment of docetaxel sensitivity upon NFIB and p21 modulation.
Main Results:
- NFIB copy number and expression are significantly increased in TNBC compared to other subtypes.
- Elevated NFIB correlates with high tumor grade, poor prognosis, and reduced chemotherapy response.
- Concurrent TP53 mutations and NFIB overexpression are frequent in TNBC (77.9%).
- NFIB depletion in TNBC cells induces cell death, cell cycle arrest, and enhances docetaxel sensitivity.
- NFIB directly interacts with the CDKN1A promoter, upregulating p21, which mediates chemoresistance.
Conclusions:
- NFIB is a key oncogenic driver in TNBC, promoting tumor growth and drug resistance.
- NFIB overexpression, particularly in TP53-mutated TNBC, contributes to poor clinical outcomes.
- Targeting NFIB in TNBC may reverse oncogenic properties by restoring p21 activity and improving chemotherapy response.
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